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1)  acid-thermal sintering process
酸热烧结法
1.
Study on preparation of feed-grade defluorinated calcium phosphate by acid-thermal sintering process
酸热烧结法制备饲料级脱氟磷酸钙的研究
2)  Hot pressing sintering method
热压烧结法
3)  hydrothermal-sinteing method
水热-烧结法
4)  hot-press sintering
热压烧结
1.
Research on hot-press sintering process of N type thermoelectric materials ZnO;
N型热电材料ZnO热压烧结工艺研究
2.
Si_3N_4 ceramics were prepared by aligning theα-Si_3N_4 whisker in the substrate via tape casting and hot-press sintering.
利用流延成型使α-Si_3N_4晶须在基体中定向排列,并采用热压烧结技术制备了Si_3N_4陶瓷。
3.
Ti_3Al/TiC+ZrO_2 composites were prepared by mechanical alloying and hot-press sintering.
采用机械合金化和热压烧结制备了Ti3Al/TiC+ZrO2复合材料。
5)  hot pressing sintering
热压烧结
1.
Beside the raw materials and formulation,the quality of diamond segments depend on the hot pressing sintering techniques and the quality of graphite mould.
人造金刚石锯片的刀头是采用粉末冶金工艺来制作的,其刀头的质量性能除了取决于原材料的选择与配比,还取决于热压烧结工艺以及石墨模具的性能。
2.
Silicon carbide particles/copper (SiCr/Cu) composites were prepared by hot pressing sintering with electric resistance heating.
用电阻热压烧结法制备了碳化硅颗粒/铜(SiC_p/Cu)复合材料。
3.
LaB_(6)ZrB_(2) composite powders with different content of ZrB_(2) were synthesized by carbon thermo-reduction method and the corresponding polycrystalline composites were fabricated by hot pressing sintering method.
通过热压烧结法制备了相应的复合材料,其性能测试结果表明:随着ZrB2含量的增加,LaB6ZrB2复合材料的硬度和弯曲强度均随之增大,而断裂韧性则先增后减,在ZrB2质量分数为21%时,其断裂韧性达最大值。
6)  hot pressing
热压烧结
1.
TiB2 cermet containing 7wt% Fe and 3wt% Mo was fabricated by hot pressing.
实验结果表明,随着热压烧结温度升 高,材料抗弯强度、洛氏硬度出现峰值,热压烧结时间延长,抗弯强度有所下降。
2.
The effects of different doses of the raw materials in ZrO_2-B_4C-C towards the calcined and sintered products were investigated by hot pressing.
采用固相反应和热压烧结方法研究了ZrO2B4CC体系反应原料的不同掺量对产物相组成的影响规律,并对烧结体进行了物相分析、粒度分析、显微结构分析、相对密度和化学分析。
3.
SiC/SiC composites were prepared by hot pressing using nano-SiC and sub-micrometer SiC powders for matrix formation.
采用纳米SiC和亚微米SiC粉料作为基体形成原料,通过热压烧结技术制备了SiC/SiC 复合材料。
补充资料:反应热压烧结(reactived hot pressing sintering)
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CAS号:

性质:又称反应热压烧结(reactived hot pressing sintering)或分解热压烧结(detomposition hot pressing sintering)。利用高温下粉料可能发生某种固相物理化学反应时处于较高能量的活化状态下进行热压烧结的方法。有以下几种类型:(1)相变热压烧结,如利用氧化锆在980~1100℃之间发生相变,同时进行热压,可获得高密度的细晶陶瓷;(2)分解热压烧结,如利用镁或铝的氢氧化物(或其硫酸盐)在高温下(900~1200℃)发生脱水或释气分解时,进行热压,只需加0.3~1MPa压力,保持0.5h,就可获得高密度的制品;(3)分解合成热压烧结,利用分解反应期的高度活性,在压力作用下与异类物质产生反应,然后再在压力作用下烧结成致密陶瓷,如氢氧化钡或碳酸钡分解的氧化钡与二氧化钛合成为钛酸钡等。

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